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A Multicenter, Prospective, Phase III Clinical Study of Proton Intensity-modulated Radiotherapy Versus Photon Intensity-modulated Radiotherapy for Untreated Non-metastatic Nasopharyngeal Carcinoma

2026年7月7日 更新者:Guangzhou Concord Cancer Center
Proton therapy for nasopharyngeal carcinoma can reduce radiotherapy-related toxic reactions, and some retrospective studies have found that proton therapy improves the survival of patients with nasopharyngeal carcinoma. However, high-level prospective clinical evidence is still lacking. This study aims to investigate the efficacy and side effects of proton therapy compared with photon intensity-modulated radiotherapy for nasopharyngeal carcinoma through a multicenter, prospective, phase III clinical trial, providing more high-quality evidence-based medical evidence for proton therapy of nasopharyngeal carcinoma.

研究概览

详细说明

Nasopharyngeal carcinoma (NPC) is a common malignant tumor of the head and neck. The incidence of nasopharyngeal carcinoma is high in China, accounting for 47% of cases worldwide, and the incidence in southern China is 20 times the global rate. Among these, the incidence in Guangdong is one of the highest in the world, which is why nasopharyngeal carcinoma is also referred to as the 'Guangdong tumor'. Because the growth site of nasopharyngeal carcinoma is adjacent to the base of the skull, it easily invades the skull base. Its pathology is mainly moderately to poorly differentiated squamous cell carcinoma, which is sensitive to radiation; therefore, radiotherapy is the first-choice treatment for nasopharyngeal carcinoma.

In recent years, with the widespread application of intensity-modulated radiotherapy (IMRT) technology and the development of targeted therapy and immunotherapy, the 5-year survival rate of patients with nasopharyngeal carcinoma has exceeded 80%, and many patients survive long-term. Therefore, while further attention is paid to improving efficacy, it is even more important to focus on the long-term quality of life of nasopharyngeal carcinoma patients. Due to the dosimetric limitations of conventional photon radiotherapy, patients treated with IMRT often experience some late complications that seriously affect quality of life, such as dry mouth, restricted mouth opening, radiation-induced caries, radiation-induced cranial nerve injury, brain injury, spinal cord injury, and pituitary dysfunction. In addition, due to the large area of low-dose irradiation, the incidence of second primary tumors in the head and neck caused by radiotherapy is approximately 0.5-3%.

Proton therapy is a new technology that uses the unique 'Bragg peak' characteristic of proton beams to treat tumors, and it has been widely applied in many developed countries in Europe and America. Photon beams gradually lose energy after penetrating to a certain depth in the human body. By the time they reach the lesion, the dose intensity has already significantly decreased, while surrounding normal tissues (OARs) such as the brainstem, spinal cord, salivary glands, and skin are exposed to relatively high doses of radiation, leading to radiotherapy side effects. In contrast, proton therapy, due to its special 'Bragg peak' characteristic, maintains a roughly stable dose after entering the body, then increases and reaches a peak to release all its energy when irradiating the lesion, achieving a 'targeted blast' on the tumor, and rapidly decreases after passing through the lesion, resulting in minimal radiation to the surrounding normal tissues and thus reducing the occurrence of long-term adverse reactions. An early study explored the clinical outcomes of 17 T4 stage NPC patients treated with a combination of proton and photon therapy. At three years, patients had a local control (LC) rate of 92%, disease-free survival rate of 75%, and overall survival (OS) rate of 74%. Late toxic reactions included one patient with temporal lobe imaging changes, one patient with mandibular radiation osteonecrosis, and two patients with endocrine dysfunction. Researchers indicated that combined proton and photon therapy could achieve good local control in T4 NPC patients, regardless of whether chemotherapy was also used. A case-control study on NPC patients published in 2015 showed that 20% of patients receiving intensity-modulated proton therapy (IMPT) required gastric tube insertion, while 65% of patients receiving intensity-modulated radiation therapy (IMRT) with photons required it. Additionally, the incidence of vomiting, nausea, gastrointestinal, and other radiotherapy side effects in the IMPT group was much lower than in the IMRT group.The Trento Proton Therapy Center in Italy published in 2019 the efficacy and toxicity of proton plus photon radiotherapy for locally advanced NPC. The study included 17 previously untreated patients with stage III-IVa NPC, who received photon radiotherapy with dose-escalated proton therapy combined with concurrent chemotherapy. The results showed 2-year, 5-year, and 10-year local recurrence-free rates of 94%, 86%, and 86%, respectively. Regarding acute toxicities, one patient required parenteral nutrition due to difficulty swallowing (16% weight loss) and was hospitalized for a short period (10 days). Two other patients experienced treatment interruptions of 5 and 6 days due to acute mucositis and having to undergo tympanostomy for otitis media. Regarding late toxicities, six patients showed temporal lobe necrosis on brain MRI, and one of them developed corresponding symptoms. A 2023 study on the use of photon and proton radiotherapy in definitive treatment of nasopharyngeal carcinoma included 80 non-metastatic NPC patients treated at their institution from 2012 to 2022; 48 received photon radiotherapy, and 32 received proton therapy. The photon and proton cohorts were compared. The median follow-up was 30 months. The results showed that the 2-year progression-free survival was 63.9% in the photon group and 90.3% in the proton group; the 2-year overall survival was 86.8% in the photon group and as high as 96.8% in the proton group. A 2025 retrospective study from Taiwan, China showed that compared with intensity-modulated photon radiotherapy, proton therapy improved survival in patients with nasopharyngeal carcinoma.

研究类型

介入性

注册 (估计的)

504

阶段

  • 不适用

联系人和位置

本节提供了进行研究的人员的详细联系信息,以及有关进行该研究的地点的信息。

学习联系方式

学习地点

    • Guangdong
      • Guangzhou、Guangdong、中国
        • Varian Probeam
        • 接触:

参与标准

研究人员寻找符合特定描述的人,称为资格标准。这些标准的一些例子是一个人的一般健康状况或先前的治疗。

资格标准

适合学习的年龄

  • 成人
  • 年长者

接受健康志愿者

不

描述

Inclusion Criteria:

  1. Diagnosed by histology and/or cytology as non-keratinizing carcinoma of the nasopharynx (differentiated or undifferentiated type, i.e., WHO type II or III).
  2. Clinical stage: T1-4N0-3M0, I-III stage (AJCC 9th edition).
  3. Age: ≥ 18 years old, ≤ 70 years old.
  4. Gender: No restrictions.
  5. ECOG ≤ 1.
  6. Good organ function:

    Normal bone marrow function: WBC ≥ 4×109/L, Platelet ≥ 100×109/L, HGB ≥ 90g/L Total bilirubin, AST, ALT ≤ 2.0× upper limit of normal value; Creatinine clearance rate ≥ 60ml/min or Creatinine ≤ 1.5× upper limit of normal value.

  7. The patient has signed the informed consent form and is willing and able to comply with the study visit schedule, treatment plan, laboratory tests and other research procedures.

Exclusion Criteria:

  1. The patient has a poor general condition and is in a state of poor health; or the patient has already experienced metastasis.
  2. The patient has an uncontrolled severe infectious disease.
  3. The patient has severe diseases or complications in the heart, lungs, liver, kidneys or other systems, and the investigator judges that they cannot complete the clinical trial.
  4. There are implants such as artificial ears or dentures within the radiotherapy range, and the investigator judges that they are not suitable for proton therapy.
  5. The patient has a history of radiotherapy in the head and neck region.
  6. The patient has mental illness, drug abuse or alcohol dependence.

学习计划

本节提供研究计划的详细信息,包括研究的设计方式和研究的衡量标准。

研究是如何设计的?

设计细节

  • 主要用途:治疗
  • 分配:非随机化
  • 介入模型:并行分配
  • 屏蔽:无(打开标签)

武器和干预

参与者组/臂
干预/治疗
实验性的:Proton therapy group
All patients received proton therapy, with a prescribed dose of 70Gy in 33 fractions, 5 days per week, for a total of 6.5 weeks.
Treatment planning and target delineation: All patients were in the supine position with the head extended backward, with the mask fixed, and enhanced computed tomography (CT) scans were performed for positioning. The slice thickness was 1.25mm. The gross tumor volume (GTV) included the recurrent primary lesion. The clinical target volume (CTV) included the anatomical expansion of the tumor and the suspicious lesions visible under the microscope. CTV specific delineation refers to the Chinese Nasopharyngeal Carcinoma Radiotherapy Guidelines (2022 edition).Radiation dose and treatment plan: The prescribed dose was 70 Gray (Gy) delivered in 33 fractions. Physicists design intensity-modulated proton therapy plans according to the physician's requirements. After the radiotherapy plan was designed, it was evaluated and repeatedly optimized by the physician and the physicist until satisfactory results were achieved. Treatment: was required for each treatment session.
安慰剂比较:Photon therapy group
All patients received photon therapy, with a prescribed dose of 70Gy in 33 fractions, 5 days per week, for a total of 6.5 weeks.
Treatment planning and target delineation: All patients were in the supine position with the head extended backward, with the mask fixed, and enhanced computed tomography (CT) scans were performed for positioning. The slice thickness was 1.25mm. The gross tumor volume (GTV) included the recurrent primary lesion. The clinical target volume (CTV) included the anatomical expansion of the tumor and the suspicious lesions visible under the microscope. CTV specific delineation refers to the Chinese Nasopharyngeal Carcinoma Radiotherapy Guidelines (2022 edition).Radiation dose and treatment plan: The prescribed dose was 70 Gray (Gy) delivered in 33 fractions. Physicists design intensity-modulated photon therapy plans according to the physician's requirements. After the radiotherapy plan was designed, it was evaluated and repeatedly optimized by the physician and the physicist until satisfactory results were achieved. Treatment: was required for each treatment session.

研究衡量的是什么?

主要结果指标

结果测量
措施说明
大体时间
3-year progression-free survival time
大体时间:From enrollment to the three-year follow-up period
Defined as the time interval from the start of treatment to tumor progression or death for any reason; if there is no tumor progression, it is until the time of the last follow-up.
From enrollment to the three-year follow-up period
Incidence of severe oral mucositis
大体时间:during radiotherapy
Grade III or higher oral mucositis occurring during radiotherapy
during radiotherapy

次要结果测量

结果测量
措施说明
大体时间
严重晚期并发症发生率
大体时间:从入组到三年随访期
在临床试验期间,毒性反应为3级的受试者比例。 研究人员记录在临床试验周期内出现的不良事件(AE),并根据《不良事件常用术语标准》(CTCAE)第5.0版进行分级。
从入组到三年随访期
短期治疗反应
大体时间:从入组到为期三个月的随访期
评估新辅助化疗结束后及放疗后3个月时达到治疗反应的患者比例,以评估短期疗效。 治疗反应将根据实体瘤疗效评价标准(RECIST)进行评估,并分为完全缓解(CR)、部分缓解(PR)、疾病稳定(SD)或疾病进展(PD)。
从入组到为期三个月的随访期
Overall survival time
大体时间:From enrollment to the three-year follow-up period
Defined as the time interval from the start of treatment to death from any cause; if no death occurs, it is until the date of the last follow-up.
From enrollment to the three-year follow-up period
Distance-free metastasis-free survival time (DMFS)
大体时间:From enrollment to the three-year follow-up period
The definition is the time interval from the start of treatment to the occurrence of distant metastasis. If there is no distant metastasis, it is the time until the last follow-up.
From enrollment to the three-year follow-up period
No local region recurrence-free survival time (LRFS)
大体时间:From enrollment to the three-year follow-up period
It is defined as the time interval from the start of treatment to the occurrence of local regional recurrence. If there is no local regional recurrence, it is the time until the last follow-up.
From enrollment to the three-year follow-up period

合作者和调查者

在这里您可以找到参与这项研究的人员和组织。

研究记录日期

这些日期跟踪向 ClinicalTrials.gov 提交研究记录和摘要结果的进度。研究记录和报告的结果由国家医学图书馆 (NLM) 审查,以确保它们在发布到公共网站之前符合特定的质量控制标准。

研究主要日期

学习开始 (估计的)

2026年7月1日

初级完成 (估计的)

2028年12月30日

研究完成 (估计的)

2028年12月30日

研究注册日期

首次提交

2026年5月5日

首先提交符合 QC 标准的

2026年5月5日

首次发布 (实际的)

2026年5月11日

研究记录更新

最后更新发布 (实际的)

2026年7月8日

上次提交的符合 QC 标准的更新

2026年7月7日

最后验证

2026年7月1日

更多信息

与本研究相关的术语

计划个人参与者数据 (IPD)

计划共享个人参与者数据 (IPD)?

不

药物和器械信息、研究文件

研究美国 FDA 监管的药品

不

研究美国 FDA 监管的设备产品

不

此信息直接从 clinicaltrials.gov 网站检索,没有任何更改。如果您有任何更改、删除或更新研究详细信息的请求,请联系 register@clinicaltrials.gov. clinicaltrials.gov 上实施更改,我们的网站上也会自动更新.

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